[
Aguilera-Rivera, D., Prieto-Davo, A., Rodriguez-Fuentas, G., Escalante-Herrera, K.S., Gaxiolo, G. (2019). A vibriosis outbreak in the Pacific white shrimp, Litopenaeus vannamei reared in biofloc and clear seawater. Journal of Invertebrate Pathology, 167, 107246. https://doi.org/10.1016/j.jip.2019.107246
]Search in Google Scholar
[
Akber, M.A., Aziz, A.A., Lovelock, C. (2020). Major drivers of coastal aquaculture expansion in Southeast Asia. Ocean and Coastal Management, 198, 105364. https://doi.org/10.1016/j.ocecoaman.2020.105364
]Search in Google Scholar
[
Alam, M.I., Debrot, A.O., Ahmed, M.U., Ahsan, M.N., Verdegem, M.C.J. (2021). Synergistic effects of mangrove leaf litter and supplemental feed on water quality, growth and survival of shrimp (Penaeus monodon, Fabricius, 1798) post larvae. Aquaculture, 545, 737237. https://doi.org/10.1016/j.aquaculture.2021.737237
]Search in Google Scholar
[
American Public Health Association (APHA). (2005). Standard Methods for the Examinaton of Water and Wastewater, sixteenth ed, APHA, Washington DC.
]Search in Google Scholar
[
Araujo, A.N., Andres, C.F.S., Nguyen, K.Q., Corby, T.L., Rhodes, M.A., Garcia, J., Roy, L.A., Davis, D.A. (2025). Effects of minimum dissolved oxygen setpoints for aeration in semi-intensive pond production of Pacific white shrimp (Litopenaeus vannamei). Aquaculture, 594, 741376. https://doi.org/10.1016/j.aquaculture.2024.741376
]Search in Google Scholar
[
Ariadi, H., and Mujtahidah, T. (2022). Analisis permodelan dinamis kelimpahan bakteri Vibrio sp. pada budidaya udang vaname, Litopenaeus vannamei. Jurnal Riset Akuakultur, 16(4), 255-262. DOI: 10.15578/jra.16.4.2021.255-262
]Search in Google Scholar
[
Ariadi, H., Fadjar, M., Mahmudi, M., Supriatna. (2019). The relationships between water quality parameters and the growth rate of white shrimp (Litopenaeus vannamei) in intensive ponds. Aquaculture, Aquarium, Conservation and Legislation, 12(6), 2103-2116.
]Search in Google Scholar
[
Ariadi, H., Wafi, A., Supriatna. (2020). Water quality relationship with FCR value in intensive shrimp culture of vannamei (Litopenaeus vannamei). Samakia: Jurnal Ilmu Perikanan, 11(1), 44-50. DOI: 10.35316/jsapi. v11i1.653
]Search in Google Scholar
[
Ariadi, H., Mujtahidah, T., Wafi, A. (2023). Implications of Good Aquaculture Practice (GAP) Application on Intensive Shrimp Ponds and The Effect on Water Quality Parameter Compatibility. Journal of Aquaculture and Fish Health, 12(2), 259-268. https://doi.org/10.20473/jafh.v12i2.32371
]Search in Google Scholar
[
Ariadi, H., Azril, M., Mujthaidah, T. (2023). Water Quality Fluctuations in Shrimp Ponds During Dry and Rainy Seasons. Croatian Journal of Fisheries, 81(3), 127-137. DOI: https://doi.org/10.2478/cjf-2023-0014
]Search in Google Scholar
[
Ariadi, H., Mujtahidah, T., Tartila, S.S.Q., Azril, M., Ayisi, C.L. (2024). Dynamic Modelling Analysis of Vibrio sp. and Plankton Abundance in Intensive Shrimp Pond. Biosaintifika: Journal of Biology and Biology Education, 16(3), 449-463. DOI: https://doi.org/10.15294/biosaintifika.v16i3.16465
]Search in Google Scholar
[
Banerjee, A., Chattopadhyay, G.N., Boyd, C.E. (2009). Determination of critical limits of soil nutrients for use in optimizing fertilizer rates for fish ponds in red, lateritic soil zones. Aquacultural Engineering, 40, 144-148. https://doi.org/10.1016/j.aquaeng.2009.02.003
]Search in Google Scholar
[
Berlanga-Robles, C.A., Fernandez, G., Ruiz-Luna, A., Cervantes-Escobar, A., Castellanos-Tapia, F. (2024). Landscape changes in a critical subtropical coastal wetland in northwestern Mexico: Is shrimp farming a driver of concern? Estuarine, Coastal and Shelf Science, 302, 108754. https://doi.org/10.1016/j.ecss.2024.108754
]Search in Google Scholar
[
Borges, E.P., Machado, L.P., Louza, A.C., Ramaglia, A.C., Santos, M.R., Augusto, A. (2024). Physiological effects of feeding whiteleg shrimp (Penaeus vannamei) with the fresh macroalgae Chaetomorpha clavata. Aquaculture Reports, 37, 102222. https://doi.org/10.1016/j.aqrep.2024.102222
]Search in Google Scholar
[
Boyd, C.E. (1998). Pond water aeration systems. Aqucultural Engineering, 18, 9-40. https://doi.org/10.1016/S0144-8609(98)00019-3
]Search in Google Scholar
[
Braaten, R.O., and Flaherty, M. (2000). Hydrology of inland brackishwater shrimp ponds in Chachoengsao, Thailand. Aquacultural Engineering, 23, 295-313. https://doi.org/10.1016/S0144-8609(00)00059-5
]Search in Google Scholar
[
Burford, M.A., Thompson, P.J., McIntosh, R.P., Bauman, R.H., Pearson, D.C. (2003). Nutrient and microbial dynamics in high-intensity, zero-exchange shrimp ponds in Belize. Aquaculture, 219, 393-411. https://doi.org/10.1016/S0044-8486(02)00575-6
]Search in Google Scholar
[
Chen, J., Yuan, C., Zhang, Y., Wu, J., Chen, G., Chen, S., Wu, H., Zhu, H., Ye, Y. (2024). Dredging wastewater discharge from shrimp ponds affects mangrove soil physical-chemical properties and enzyme activities. Science of The Total Environment, 926, 171916. https://doi.org/10.1016/j.scitotenv.2024.171916
]Search in Google Scholar
[
Chowdhury, A., Chandan, C.S.S., Pandit, D., Ahammad, B., Rahman, M.H., Chowdhury, M.I., Mia, R., Akter, S., Rahman, M.Z., Majumdar, B.C. (2024). Assessing White Spot Syndrome Virus (WSSV) and Acute Hepatopancreatic Necrosis Disease (AHPND) concurrent with Vibrio spp. in various Penaeus monodon aquaculture farms at southwestern region of Bangladesh. Comparative Immunology Reports, 7, 200178. https://doi.org/10.1016/j.cirep.2024.200178
]Search in Google Scholar
[
Chumpol, S., Kantachote, D., Nitoda, T., Kanzaki, H. (2019). The roles of probiotic purple nonsulfur bacteria to control water quality and prevent acute hepatopancreatic necrosis disease (AHPND) for enhancement growth with higher survival in white shrimp (Litopenaeus vannamei) during cultivation. Aquaculture, 473, 327-336. https://doi.org/10.1016/j.aquaculture.2017.02.033
]Search in Google Scholar
[
Das, S., Saha, P., Adhurya, S., Ray, A., Ray, S. (2022). Present and future scenarios of changing land use patterns from the perspective of agroecosystem under the shadow of ever-expanding shrimp culture. Environmental Development, 44, 100772. https://doi.org/10.1016/j.envdev.2022.100772
]Search in Google Scholar
[
de Almeida, M.S., Carrijo, J.R., Furtado, P.S., Foes, G.K., Junior, W.W., Braga, A.L., Gimenes, R.M.T., Poersch, L.H., Ruviaro, C.F. (2024). Environmental performance of Penaeus vannamei shrimp production in intensive and super-intensive biofloc systems. Aquacultural Engineering, 107, 102434. https://doi.org/10.1016/j.aquaeng.2024.102434
]Search in Google Scholar
[
Delphino, M.K.V.C., Laurin, E., Patanasatienkul, T., Rahardjo, R.B., Hakim, L., Zulfikar, W.G., Burnley, H., Hammell, K.L., Thakur, K. (2022). Description of biosecurity practices on shrimp farms in Java, Lampung, and Banyuwangi, Indonesia. Aquaculture, 556, 738277. https://doi.org/10.1016/j.aquaculture.2022.738277
]Search in Google Scholar
[
Dong, Q.H., and Vogel-Heuser, B. (2021). Modelling Industrial Technical Compromises in Production Systems with Causal Loop Diagrams. IFAC-PapersOnLine, 54, 212-219. https://doi.org/10.1016/j.ifacol.2021.10.036
]Search in Google Scholar
[
Emerenciano, M.G.C., Rombenso, A.N., Vieira, F.D.N., Martins, M.A., Coman, G.J., Truong, H.H., Noble, T.H., Simon, C.J. (2022). Intensification of Penaeid Shrimp Culture: An Applied Review of Advances in Production Systems, Nutrition and Breeding. Animals, 12, 236. https://doi.org/10.3390/ani12030236
]Search in Google Scholar
[
FAO. (1980). Soil and plant testing and analysis. FAO Soil Bull. 38(1), 250, Rome: Food Agriculture Organization.
]Search in Google Scholar
[
FAO. (2024). International Markets For Fisheries And Aquaculture Products. Rome: Food Agriculture Organization.
]Search in Google Scholar
[
Fossmark, R.O., Vadstein, O., Rosten, T.W., Bakke, I., Koseto, D., Bugten, A.V., Helberg, G.A., Nesje, J., Jorgensen, N.O.G., Raspati, G., Azrague, K., Osterhus, S.W., Attramadal, K.J.K. (2020). Effects of reduced organic matter loading through membrane filtration on the microbial community dynamics in recirculating aquaculture systems (RAS) with Atlantic salmon parr (Salmo salar). Aquaculture, 524, 735268. https://doi.org/10.1016/j.aquaculture.2020.735268
]Search in Google Scholar
[
Hasibuan, S., Syafriadiman, S., Aryani, N., Fadhli, M., Hasibuan, M. (2023). The age and quality of pond bottom soil affect water quality and production of Pangasius hypophthalmus in the tropical environment. Aquaculture and Fisheries, 8, 296-304. https://doi.org/10.1016/j.aaf.2021.11.006
]Search in Google Scholar
[
Herbeck, L.S., Unger, D., Wu, Y., Jennerjahn, T.C. (2013). Effluent, nutrient and organic matter export from shrimp and fish ponds causing eutrophication in coastal and back-reef waters of NE Hainan, tropical China. Continental Shelf Research, 57, 92-104. https://doi.org/10.1016/j.csr.2012.05.006
]Search in Google Scholar
[
Hill, M.J., Thornhill, I., Tiegs, S.D., Castro-Castellon, A., Hernandez-Aviles, J.S., Daw, A., Salinas-Camarillo, V.H., Hobbs, S. (2022). Organic-matter decomposition in urban stream and pond habitats. Ecological Indicators, 142, 109232. https://doi.org/10.1016/j.ecolind.2022.109232
]Search in Google Scholar
[
Huang, H.H., Li, C.Y., Song, Y., Lei, Y.J., Yang, P.H. (2022). Growth performance of shrimp and water quality in a freshwater biofloc system with a salinity of 5.0‰: Effects on inputs, costs and wastes discharge during grow-out culture of Litopenaeus vannamei. Aquacultural Engineering, 98, 102265. https://doi.org/10.1016/j.aquaeng.2022.102265
]Search in Google Scholar
[
Huang, C., Jiang, T., Zhu, B., Liu, D., Shan, H., Wang, F. (2024). Assessment of refractory dissolved organic carbon in sediments of marine culture ponds: An example of two culture systems for Penaeus vannamei. Aquaculture, 593, 741368. https://doi.org/10.1016/j.aquaculture.2024.741368
]Search in Google Scholar
[
Junda, M. (2018). Development of Intensive Shrimp Farming, Litopenaeus vannamei In Land-Based Ponds: Production and Management. Journal Physics: Conference Series, 012020. DOI 10.1088/1742-6596/1028/1/012020
]Search in Google Scholar
[
Khanjani, M.H., da Silva, L.O.B., Foes, G.K., Vieira, F.N., Poli, M.A., Santos, M., Emerenciano, M.G.C. (2023). Synbiotics and aquamimicry as alternative microbial-based approaches in intensive shrimp farming and biofloc: Novel disruptive techniques or complementary management tools? A scientific-based overview. Aquaculture, 567, 739273. https://doi.org/10.1016/j.aquaculture.2023.739273
]Search in Google Scholar
[
Lemonnier, H., Courties, C., Mugnier, C., Torreton, J.P., Herbland, A. (2010). Nutrient and microbial dynamics in eutrophying shrimp ponds affected or unaffected by vibriosis. Marine Pollution Bulletin, 60, 402-411. https://doi.org/10.1016/j.marpolbul.2009.10.012
]Search in Google Scholar
[
Lemonnier, H., Lantoine, F., Courties, C., Guillebault, D., Nezan, E., Chomerat, N., Escoubeyrou, K., Galinie, C., Blockmans, B., Laugier, T. (2016). Dynamics of phytoplankton communities in eutrophying tropical shrimp ponds affected by vibriosis. Marine Pollution Bulletin, 110, 449-459. https://doi.org/10.1016/j.marpolbul.2016.06.015
]Search in Google Scholar
[
Li, Y., and Boyd, C.E. (2016). Laboratory tests of bacterial amendments for accelerating oxidation rates of ammonia, nitrite and organic matter in aquaculture pond water. Aquaculture 460, 45-58. https://doi.org/10.1016/j.aquaculture.2016.03.050
]Search in Google Scholar
[
Li, T., and Brouwer, M. (2013). Field study of cyclic hypoxic effects on gene expression in grass shrimp hepatopancreas. Comparative Biochemistry and Physiology Part D, 8, 309-316. https://doi.org/10.1016/j.cbd.2013.09.001
]Search in Google Scholar
[
Li, J.Y., Tong, Y., Gong, Q., Tian, Y., Yang, Y., Wen, L., Chen, H., Wang, Q. (2025). Cultured shrimp Penaeus vanmamei from eastern China accumulates PAHs and PYRs through different pathways: Water and food sources matter. Aquaculture, 598, 742060. https://doi.org/10.1016/j.aquaculture.2024.742060
]Search in Google Scholar
[
Liou, C.H., To, V.A., Zhang, Z.F., Lin, Y.H. (2023). The effect of dietary lecithin and lipid levels on the growth performance, body composition, hemolymph parameters, immune responses, body texture, and gene expression of juvenile white shrimp (Litopenaeus vannamei). Aquaculture 567, 739260. https://doi.org/10.1016/j.aquaculture.2023.739260
]Search in Google Scholar
[
Luo, J., Sun, Z., Lu, L., Xiong, Z., Cui, L., Mao, Z. (2022). Rapid expansion of coastal aquaculture ponds in Southeast Asia: Patterns, drivers and impacts. Journal of Environmental Management, 315, 115100. https://doi.org/10.1016/j.jenvman.2022.115100
]Search in Google Scholar
[
Ma, Z., Song, X., Wan, R., Gao, L. (2013). A modified water quality index for intensive shrimp ponds of Litopenaeus vannamei. Ecological Indicators, 24, 287-293. https://doi.org/10.1016/j.ecolind.2012.06.024
]Search in Google Scholar
[
Mustafa, A., Syah, R., Paena, M., Sugama, K., Kontara, E.K., Muliawan, I., Suwoyo, H.S., Asaad, A.I.J., Asaf, R., Ratnawati, E., Athirah, A., Makmur., Suwardi., Taukhid, I. (2023). Strategy for Developing Whiteleg Shrimp (Litopenaeus vannamei) Culture Using Intensive/Super-Intensive Technology in Indonesia. Sustainability, 15, 1753. https://doi.org/10.3390/su15031753
]Search in Google Scholar
[
Ngoc, P.T.A., Le, V., Pham, T.T., Pham, H.C., Le, T.C., Lansink, A.O. (2021). Technical and scale efficiency of intensive white-leg shrimp (Litopenaeus vannamei) farming in Vietnam: A data envelopment analysis. Aquaculture Economics and Management, 27, 50-65. https://doi.org/10.1080/13657305.2021.2003483
]Search in Google Scholar
[
Nguyen, N.T., and Matsuhashi, R. (2019). An Optimal Design on Sustainable Energy Systems for Shrimp Farms. IEEE Access, 7, 165543. DOI: 10.1109/ACCESS.2019.2952923
]Search in Google Scholar
[
Nguyen, T.V., Alfaro, A.C., Rodriguez, J., Bayot, B., Sonnenholzner, S. (2022). Changes in metabolic profiling of whiteleg shrimp (Penaeus vannamei) under hypoxic stress. Journal of Invertebrate Pathology, 193, 107798. https://doi.org/10.1016/j.jip.2022.107798
]Search in Google Scholar
[
Nimptsch, J., Woelfl, S., Osorio, S., Valenzuela, J., Ebersbach, P., von Tumpling, W., Palma, R., Encina, F., Figueroa, D., Kamjunke, N., Graeber, D. (2015). Tracing dissolved organic matter (DOM) from land-based aquaculture systems in North Patagonian streams. Science of The Total Environment, 537, 129-138. https://doi.org/10.1016/j.scitotenv.2015.07.160
]Search in Google Scholar
[
Nyberg, O., Novothy, A., Sbaay, A.S., Nasr-Allah, A.M., Al-Kenawy, D.A.R., Rossignoli, C.M., Henriksson, P.J.G. (2024). Poultry manure fertilization of Egyptian aquaculture ponds brings more cons than pros. Aquaculture, 590, 741040. https://doi.org/10.1016/j.aquaculture.2024.741040
]Search in Google Scholar
[
Okura, T., Takahashi, A., Sasanami, T., Oda, T., Dur, G. (2025). First individual-based model to study the impact of temperature on Sakura shrimp larvae development: Integrating experimental insights. Aquaculture, 595, 741659. https://doi.org/10.1016/j.aquaculture.2024.741659
]Search in Google Scholar
[
Peixoto, S., Craveiro, C., Filho, F.C., Castro-Neto, H., Soares, R. (2025). The effect of the molting cycle on the acoustic characteristics of clicks emitted by Litopenaeus vannamei. Aquaculture, 596, 741761. https://doi.org/10.1016/j.aquaculture.2024.741761
]Search in Google Scholar
[
Perez, K.A.T., de Jesus, T.B., Villa, P.M., Silva, G.O.M. (2025). Geochemical dynamics of coastal environments with shrimp farming activities in southern Bahia, Brazil. Marine Pollution Bulletin, 213, 117626. https://doi.org/10.1016/j.marpolbul.2025.117626
]Search in Google Scholar
[
Prasetyaningsari, I., Setiawan, A., Setiawan, A.A. (2013). Design Optimization of Solar Powered Aeration System for Fish Pond in Sleman Regency, Yogyakarta by HOMER Software. Energy Procedia, 32, 90-98. https://doi.org/10.1016/j.egypro.2013.05.012
]Search in Google Scholar
[
Primavera, J.H. 2006. Overcoming the impacts of aquaculture on the coastal zone. Ocean Coastal Management, 49(9), 531-545. http://dx.doi.org/10.1016/j.ocecoaman.2006.06.018.
]Search in Google Scholar
[
Qian, J., Zhang, C., Zhou, W., Tang, Y., Li, J., Li, C. (2024). A thermodynamically consistent constitutive model for soil-rock mixtures: A focus on initial fine content and particle crushing. Computers and Geotechnics, 169, 106233. https://doi.org/10.1016/j.compgeo.2024.106233
]Search in Google Scholar
[
Ram, S.A., and Irfan, Z.B. (2021). Application of System Thinking Causal Loop Modelling in understanding water Crisis in India: A case for sustainable Integrated Water resources management across sectors. HydroResearch, 4, 1-10. https://doi.org/10.1016/j.hydres.2021.02.001
]Search in Google Scholar
[
Ramesh, P., Jasmin, A., Tanveer, M., Roshan, R.U., Ganeshan, P., Rajendran, K., Rpy, S.M., Kumar, D., chinnathambi, A., Brindhadevi, K. (2024). Optimizing aeration efficiency and forecasting dissolved oxygen in brackish water aquaculture: Insights from paddle wheel aerator. Journal of the Taiwan Institute of Chemical Engineers, 156, 105353. https://doi.org/10.1016/j.jtice.2024.105353
]Search in Google Scholar
[
Reis, J., Weldon, A., Ito, P., Stites, W., Rhodes, M., Davis, D.A. (2021). Automated feeding systems for shrimp: Effects of feeding schedules and passive feedback feeding system. Aquaculture, 541, 736800. https://doi.org/10.1016/j.aquaculture.2021.736800
]Search in Google Scholar
[
Rocha, J.L., Pereira, A.C.S., Correira, A.M., Giumbelli, L.D., Brunetto, G., Loss, A., Arana, L.A.V. (2022). A new strategy to study pond soil chemistry in intensive and extensive cultures of Litopenaeus vannamei: A case study in Brazil. Aquaculture, 549, 737785. https://doi.org/10.1016/j.aquaculture.2021.737785
]Search in Google Scholar
[
Ruiz-Velazco, J.M.J., Hernandez-llamas, A., Gomez-Munoz, V.M. (2010). Management of stocking density, pond size, starting time of aeration, and duration of cultivation for intensive commercial production of shrimp Litopenaeus vannamei. Aquacultural Engineering, 43, 114-119. https://doi.org/10.1016/j.aquaeng.2010.08.002
]Search in Google Scholar
[
Salawu, O.A., Han, Z., Adeleye, A.S. (2022). Shrimp waste-derived porous carbon adsorbent: Performance, mechanism, and application of machine learning. Journal of Hazardous Materials, 437, 129266. https://doi.org/10.1016/j.jhazmat.2022.129266
]Search in Google Scholar
[
Sanchez-Gendriz, I., Pulgar-Panteleon, E.M., Hamilton, S., filho, F.C., Guedes, L.A., Soares, R., Peixoto, S. (2025). Python-based acoustic detection of Penaeus vannamei feeding behavior. Aquaculture, 595, 741645. https://doi.org/10.1016/j.aquaculture.2024.741645
]Search in Google Scholar
[
Satanwat, P., Tapeneeyaworawong, P., Boonprasertsakul, T., Maksee, A., Kotcharoen, W., Adlin, N., Watari, T., Yamaguchi, T., Pungrasmi, W., Powtongsook, S. (2023). Sustainable practice for a zero-discharge outdoor earthen shrimp pond based on biological nitrogen waste carrying capacity. Aquaculture, 574, 739734. https://doi.org/10.1016/j.aquaculture.2023.739734
]Search in Google Scholar
[
Satanwat, P., Tapeneeyaworawong, P., Wechprasit, P., Boonprasertsakul, T., Pungrasmi, W., Sritunyalucksana, K., Prachumwat, A., Powtongsook, S. (2023). Total ammonia nitrogen removal and microbial community dynamics in an outdoor HDPE-lined shrimp pond with no water discharge. Aquaculture, 577, 739898. https://doi.org/10.1016/j.aquaculture.2023.739898
]Search in Google Scholar
[
Siegenthaler, A., Mastin, A., Dufaut, C., Mondal, D., and Benvenuto, C. (2018). Background matching in the brown shrimp Crangon crangon: adaptive camouflage and behavioural-plasticity. Scientific Reports, 8, 3292. https://doi.org/10.1038/s41598-018-21412-y
]Search in Google Scholar
[
Suantika, G., Situmorang, M.L., Kurniawan, J.B., Pratiwi, S.A., Aditiawati, P., Astuti, D.I., Azizah, F.F.N., Djohan, Y.A., Zuhri, U., Simatupang, T.M. (2018). Development of a zero water discharge (ZWD)—Recirculating aquaculture system (RAS) hybrid system for super intensive white shrimp (Litopenaeus vannamei) culture under low salinity conditions and its industrial trial in commercial shrimp urban farming in Gresik, East Java, Indonesia. Aquacultural Engineering, 82, 12-24. https://doi.org/10.1016/j.aquaeng.2018.04.002
]Search in Google Scholar
[
Trang, N.T.D., Ashton, E.C., Tung, N.C.T., Thanh, N.H., Cong, N.V., Nam, T.S., Thuan, N.C., Khanh, H.C., Duy, N.P., Truong, N.N. (2022). Shrimp farmers perceptions on factors affecting shrimp productivity in integrated mangrove-shrimp systems in Ca Mau, Vietnam. Ocean and Coastal Management, 219, 106048. https://doi.org/10.1016/j.ocecoaman.2022.106048
]Search in Google Scholar
[
Uddin, S.A., Kader, M.A., Sikder, M.N.A., Hakim, M.A., Alam, M.M., Azad, A.H., Hasan, C.K. (2013). Study Of Probiotics On The Seed Production Of Black Tiger Shrimp Penaeus monodon. Croatian Journal of Fisheries, 71, 124-130. DOI: 10.14798/71.3.654
]Search in Google Scholar
[
Ulhaq, I., Pham, N.T.A., Le, V., Pham, H.C., Le, T.C. (2022). Factors influencing intention to adopt ICT among intensive shrimp farmers. Aquaculture, 547, 737407. https://doi.org/10.1016/j.aquaculture.2021.737407
]Search in Google Scholar
[
Wafi, A., and Ariadi, H. (2024). The dynamic model analysis of production feasibility and market valuation of intensive shrimp culture business. Aquaculture, Aquarium, Conservation and Legislation, 17(1),, 173-179.
]Search in Google Scholar
[
Wafi, A., Ariadi, H., Muqsith, A., Mahmudi, M., Fadjar, M. (2021). Oxygen consumption of Litopenaeus vannamei in intensive ponds based on the dynamic modeling system. Journal of Aquaculture and Fish Health, 10(1), 17-24. https://doi.org/10.20473/jafh.v10i1.18102
]Search in Google Scholar
[
Wu, J., Wu, K., yang, J., Chen, G., Tang, F., Ye, Y. (2024). Ecophysiological responses of mangrove Kandelia obovata seedlings to bed-cleaning sludge from coastline shrimp ponds. Marine Pollution Bulletin, 209, 117070. https://doi.org/10.1016/j.marpolbul.2024.117070
]Search in Google Scholar
[
Wu, Q., Liu, J., Malakar, P., Pan, Y., Zhao, Y., Zhang, Z. (2023). Modeling naturally-occurring Vibrio parahaemolyticus in post-harvest raw shrimps. Food Research International, 173, 113462. https://doi.org/10.1016/j.foodres.2023.113462
]Search in Google Scholar
[
Wu, L., Yang, P., Zhang, L., Luo, L., hong, Y., Zhu, W., Zheng, L., Zhao, G., Tong, C., Penuelas, J. (2023). Sediment sulfate content determines assembly processes and network stability of bacteria communities of coastal land-based shrimp aquaculture ponds. Aquaculture, 563, 738953. https://doi.org/10.1016/j.aquaculture.2022.738953
]Search in Google Scholar
[
Wu, R., Mou, X., Dong, S., khoder, R.M., Xiong, S., Liu, R. (2024). Formation and kinetic analysis of AGEs in Pacific white shrimp during frying. Food Chemistry, 460, 140408. https://doi.org/10.1016/j.foodchem.2024.140408
]Search in Google Scholar
[
Xu, J., Wang, J., Lin, S., Hou, L., Ma, S., Yabing, L., Chen, R., He, X., Hou, J. (2023). The effect of novel aquaculture mode on phosphorus sorption-release in pond sediment. Science of The Total Environment, 905, 167019. https://doi.org/10.1016/j.scitotenv.2023.167019
]Search in Google Scholar
[
Zhang, K., WANG, g.j., Fu, D.S., Gong, W.B., Yu, E.M., Li, Z.F., Tian, J.J., Xia, Y., Li, H.Y., Xie, J. (2022). Nutrient dynamics and balance of zero–water exchange ponds of grass carp, crucian carp and bighead carp. Aquaculture, 561, 738565. https://doi.org/10.1016/j.aquaculture.2022.738565
]Search in Google Scholar
[
Zhao, C., Bao, G., Mei, B., Luo, Y., Xu, J., Xu, S., Wang, D. (2025). Study on the aquaculture capacity of whiteleg shrimp (Litopenaeus vannamei)-razor clam (Sinonovacula constricta) tandem mariculture pond. Aquaculture Reports, 40, 102625. https://doi.org/10.1016/j.aqrep.2025.102625
]Search in Google Scholar
[
Zhou, X., Zhuo, H., Lin, L., Zhang, Y., Li, J., Fu, S., Wu, G., Guo, C., Liu, J. (2024). Apoptosis-stimulating protein of p53 (ASPP) participates in the regulation of apoptosis in Litopenaeus vannamei under ammonia-N and nitrite-N stress. Aquaculture Reports, 39, 102413. https://doi.org/10.1016/j.aqrep.2024.102413
]Search in Google Scholar